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Fabrication of mm-Scale Complementary Split Ring Resonators, for Potential Application as Water Pollution Sensors
Zacharias Viskadourakis1, George Fanourakis1, Evangelos Tamiolakis2
1Institute of Electronic Structure and Laser (IESL), Foundation for Research and Technology-Hellas (FORTH), N. Plastira 100, Vasilika Vouton, GR-70013 Heraklion, Greece.
None:
Rectangular, millimeter-scale complementary split ring resonators were fabricated, employing the so-called Computer Numerical Control method, combined with a home-built mechanical engraver. Their electromagnetic performance was thoroughly investigated with respect to their dimensions in the frequency regime between 2 and 9 GHz via combining experiments and corresponding theoretical simulations, wherein a considerably effective consistency was obtained. Moreover, their sensing response was extensively investigated against various aqueous solutions enriched with typical fertilizers used in agriculture, as well as detergents commonly used in every-day life. Corresponding experimental results evidently establish the capability of the studied metasurfaces as potential sensors against water pollution.

